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    <title>Development of genomic resources and tools for precision farming of pikeperch through high-throughput sequencing and computational genomics</title>
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  <abstract type="Summary">This thesis provides the first genomic tools and resources to enhance pikeperch's innovative farming, optimal domestication, and adaption into modern intensive aquaculture systems, including a high-quality chromosome-level assembly, reference transcriptome, and gene expression atlas. The pikeperch genome was also used as a reference for comparative genomics analyses and population genetics analyses in domesticated individuals to establish the landscape of genetic variations. These findings lay the foundation for addressing critical issues in genomics-informed pikeperch farming.&lt;eng&gt;</abstract>
  <abstract type="Summary">Diese Dissertation stellt die ersten genomischen Werkzeuge und Ressourcen zur Verfügung, um die innovative Zanderzucht, optimale Domestizierung und Anpassung an moderne intensive Aquakultursysteme zu verbessern, einschließlich einer hochwertigen Genom-Assemblierung auf Chromosomenebene, eines Referenztranskriptoms und eines Genexpressionsatlasses. Das Genom des Zanders wurde auch als Referenz für vergleichende Genomanalysen und populationsgenetische Analysen bei domestizierten Individuen verwendet, um die Landschaft der genetischen Variationen zu ermitteln.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Julien A. Nguinkal</note>
  <note>GutachterInnen: Tom Goldammer (Dept. of Molecular Biology and Genetics of Fish, Faculty of Agricultural and Environmental Sciences, University of Rostock, Germany) ; Olaf Wolkenhauer (Dept. of Systems Biology and Bioinformatics, Faculty of Computer Science and Electrical Engineering, University of Rostock, Germany) ; Stefan Simm (Institute of Bioinformatics, University Medicine Greifswald, University of Greifswald, Germany)</note>
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